首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Time-Dependent Nerve Growth Factor Signaling Changes in the Rat Retina During Optic Nerve Crush-Induced Degeneration of Retinal Ganglion Cells
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Time-Dependent Nerve Growth Factor Signaling Changes in the Rat Retina During Optic Nerve Crush-Induced Degeneration of Retinal Ganglion Cells

机译:视神经挤压诱发的视网膜神经节细胞变性过程中大鼠视网膜的时间依赖性神经生长因子信号变化

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摘要

Nerve growth factor (NGF) is suggested to be neuroprotective after nerve injury; however, retinal ganglion cells (RGC) degenerate following optic-nerve crush (ONC), even in the presence of increased levels of endogenous NGF. To further investigate this apparently paradoxical condition, a time-course study was performed to evaluate the effects of unilateral ONC on NGF expression and signaling in the adult retina. Visually evoked potential and immunofluorescence staining were used to assess axonal damage and RGC loss. The levels of NGF, proNGF, p75NTR, TrkA and GFAP and the activation of several intracellular pathways were analyzed at 1, 3, 7 and 14 days after crush (dac) by ELISA/Western Blot and PathScan intracellular signaling array. The progressive RGC loss and nerve impairment featured an early and sustained activation of apoptotic pathways; and GFAP and p75NTR enhancement. In contrast, ONC-induced reduction of TrkA, and increased proNGF were observed only at 7 and 14 dac. We propose that proNGF and p75NTR contribute to exacerbate retinal degeneration by further stimulating apoptosis during the second week after injury, and thus hamper the neuroprotective effect of the endogenous NGF. These findings might aid in identifying effective treatment windows for NGF-based strategies to counteract retinal and/or optic-nerve degeneration.
机译:建议神经生长因子(NGF)在神经损伤后具有神经保护作用。然而,即使存在内源性NGF水平升高,视网膜神经节细胞(RGC)也会在视神经挤压(ONC)后退化。为了进一步研究这种明显的自相矛盾的状况,进行了一项时程研究,以评估单侧ONC对成人视网膜中NGF表达和信号传导的影响。视觉诱发电位和免疫荧光染色用于评估轴突损伤和RGC丢失。通过ELISA / Western Blot和PathScan分析了挤压(dac)后1、3、7和14天的NGF,proNGF,p75 NTR ,TrkA和GFAP的水平以及几种细胞内途径的激活细胞内信号阵列。进行性RGC丧失和神经损伤的特征是凋亡通路的早期和持续激活。 GFAP和p75 NTR 增强。相反,仅在7和14 dac时观察到ONC诱导的TrkA降低和proNGF升高。我们认为proNGF和p75 NTR 可以通过在损伤后第二周进一步刺激细胞凋亡来加剧视网膜变性,从而阻碍内源性NGF的神经保护作用。这些发现可能有助于为基于NGF的策略确定有效的治疗窗口,以抵消视网膜和/或视神经变性。

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